• 제목/요약/키워드: Explosive limit

검색결과 76건 처리시간 0.022초

Ti-6Al-4V합금의 미세조직에 따른 초고속 변형특성 (Effect of Microstructures on the Deformation Behavior of Ti-6Al-4V Alloy at Ultra High Strain rate)

  • 이유환;이동근;이성학;최준홍;허선무;이종수
    • 한국군사과학기술학회지
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    • 제5권3호
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    • pp.89-97
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    • 2002
  • In this study, the effect of $\alpha$-phase morphology on the dynamic deformation behavior at ultra high strain rate was investigated by EBW(Explosive Bridge Wire) test. All of tests and analyses were conducted on three typical microstructures of Ti-6Al-4V alloy, i.e. equiaxed, widmanstatten and bimodal microstructures. The spall strength and HEL(Hugoniot Elastic Limit) of the specimens that have the thickness of 2mm and 4mm were highest with the bimodal microstructure. These results were similar with previous study which was performed by dynamic torsion test(Kolsky torsion test).

배터리 전해질 유기용매인 EC(Ethylene Carbonate)의 연소특성치 측정 (Measurement of Combustible Characteristics of EC(Ethylene Carbonate) for Battery Electrolyte Organic Solvent)

  • 장유리;장유선;최재준;하동명
    • 한국가스학회지
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    • 제27권4호
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    • pp.50-55
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    • 2023
  • 리튬이온 2차전지는 현재 많은 수요와 공급이 이루어지고 있다. 본 연구에서는 리튬이온전지의 전해질 유기용매로 사용되는 EC(Ethylene Carbonate)의 연소특성치 연구를 통해 이를 취급하는 공정의 안전성 확보를 목적으로 한다. 밀폐식 장치인 Setaflash와 Pensky-Martens에 의한 EC의 인화점은 141 ℃와 143 ℃, 개방식 장치인 Tag와 Cleveland는 각각 152 ℃와 156 ℃로 측정되었으며 AIT(Auto Ignition Temperature)는 420 ℃로 측정되었다. Setaflash에서 측정된 인화점에 의한 LEL(Lower Explosive Limit) 은 3.6 Vol.%로 계산되었다.

태양전지 제조용 PCVD설비의 환기 성능 분석(폭발 방지 측면) (Analysis of Ventilation Performance of PCVD Facility for Solar Cell Manufacturing (Explosion Prevention Aspect))

  • 이성삼;안형환
    • 한국가스학회지
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    • 제26권5호
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    • pp.35-40
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    • 2022
  • 태양광 전지 제조 설비인 PCVD(Plasma Chemical Vapor Deposition)는 NH3, SIH4, O2를 Chamber에 주입하여 생성된 Plasma를 Wafer에 증착시키는 설비이다. PCVD설비에서 Gas 이동과 주입이 Gas Cabinet에서 이루어지며, 내부에는 MFC, Regulator, Valve, Pipe 등이 복잡하게 연결되어 많은 누출 점이 존재한다. 폭발 상한값(UEL) 33.6%, 폭발 하한값(LEL) 15%의 NH3 누출 시 폭발을 예방하기 위해서는 NH3 농도가 폭발 범위에서 벗어날 수 있는 희석능력이 있어야 한다. 본 연구는 기존 PCVD의 Gas Cabinet에 대한 NH3 Gas 누출 시 희석능력을 3D와 수치로 확인할 수 있는 CFD 분석 기법을 활용하여 분석하였다. 그 결과 중희석에 해당되며 설비 개선을 통해 고환기가 가능하다는 결론을 얻었다.

공진점변화검출용 QCM 센싱플랫폼을 이용한 폭발물 특이적 바이오수용체 성능평가 (Performance Evaluation of Explosive Specific Bio-receptor Using QCM Sensing Platform for Resonance Frequency Shift Detection)

  • 임시형;정현진
    • 한국소음진동공학회논문집
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    • 제21권3호
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    • pp.280-284
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    • 2011
  • The mass change during the molecular interaction between explosive specific bio-receptors and target molecules has been measured using quartz crystal microbalance(QCM), which has a mass change detection limit up to ~ng/$cm^2$. The environmental effect on the molecular interaction has been evaluated. In the liquid phase molecular interaction experiments, the high selectivity of the bio-receptor to DNT compared with toluene has been shown and the sensitivity for various concentrations of DNT has been demonstrated.

패럴린 박막을 이용한 기계화학적 폭발물 센서 (Parylene membrane based chemomechanical explosive sensor)

  • 신재하;이성준;차미선;김문상;이정훈
    • 센서학회지
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    • 제19권6호
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    • pp.497-503
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    • 2010
  • This paper reports a chemomechanical explosive sensor based on a thin polymer membrane. The sensor consists of thin parylene membrane and electrodes. Parylene membrane is functionalized with 4-mercaptophenol which interacts strongly with nitrotoluene based explosives. The membrane deflection caused by molecular interaction between the surface and explosives is monitored by capacitance between the membrane and the substrate. To measure the capacitance, electrodes are formed on the membrane and the substrate. While the previous cantilever system requires a bulky optical measuring system, this purely electric monitoring method offers a compact and effective system. Thus, this explosive sensor can be readily miniaturized and used in the field. The developed sensor can reliably detect dinitrotoluene and its limit of detection is evaluated as approximately 110 ppb.

노말프로판올의 자연발화온도와 발화지연시간의 관계

  • 하동명;최용찬;한종근;김한돌;신용범;정세훈;이문선;윤준혁;류정열
    • 한국산업안전학회:학술대회논문집
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    • 한국안전학회 2003년도 추계 학술논문발표회 논문집
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    • pp.154-159
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    • 2003
  • 화학공장과 제조업 등의 사업장에서 발생하는 화재 및 폭발은 설비와 건물의 파괴뿐만 아니라 사업장의 근로자와 인근 주민에 대한 인명 피해까지 초래하는 경우가 많으므로 공정 안전을 위해 화재 및 폭발 분야의 연구에 많은 관심을 가져야 한다. 방화(Fire Protection) 및 방폭(Fire Protection)에 관련되는 특성치로 MSDS의 5번째 항목인 폭발화재시대처방법(Fire-fighting Measures)에서는 폭발(연소)한계(Explosive Limit 혹은 Flammability Limit), 인화점(Flash Point), 최소발화온도(AIT: Auto-ignition Temperature)가 제시되고 있다.(중략)

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저압방전 불꽃에서 전극재질이 점화에너지에 미치는 영향 (Effect of Electrode Material on the Minimum Ignition Energy in Low-Voltage Spark Discharge)

  • 최상원;이관형;문정기
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1995년도 하계학술대회 논문집 C
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    • pp.1394-1397
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    • 1995
  • In the hazardous areas where explosive gases, vapor or mists exist, electrical apparatus and installations must be of explosion-proof construction to prevent or limit the danger of the ignition of potentially explosive atmosphere. In Korea, nine types of protection have been specified in the government regulations at present: flameproof enclosure, pressurization, oil immersion, increased safety, intrinsic safety, non-incendive, sand filling, encapsulation, and special types. Among these types, the intrinsic safety has the construction which limit or by-pass igniting the electric energy using electronic devices. This type has lots of merits but at the same time requires a high-degree of technology. In this paper, we investigated several dominating factors which affect the minimum ignition energy: this energy plays a very important role in design and evaluation of the intrinsic safety type electrical apparatus. Eletrode material, which is one of the most important factors, was intensively studied for the five sorts of material(Al, Cd, Mg, Sn, and Zn) with performing experiment in a low-voltage inductive circuit using IEC-type spark apparatus. The experimental results show that the minimum ignition energy of electrode material is varied: highest in Cd and lowest in Sn. We also confirmed the effect of eletrode make-and-break speed and magnetic field magnitude.

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AUTODYN을 이용한 LNG 폭발 사고 위력 평가에 관한 법공학적 연구 (A Forensic Engineering Study on Evaluation of Explosive Pressure and Velocity for LNG Explosion Accident using AUTODYN)

  • 김의수;김종혁;심종헌;김진표;고재모;박남규
    • 한국안전학회지
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    • 제30권4호
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    • pp.56-63
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    • 2015
  • Gas explosion accidents could cause a catastrophe. we need specialized and systematic accident investigation techniques to shed light on the cause and prevent similar accidents. In this study, we had performed LNG explosion simulation using AUTODYN which is the commercial explosion program and predicted the damage characteristics of the structures by LNG explosive power. In the first step, we could get LNG's physical and chemical explosion properties by calculation using TNT equivalency method. And then, by applying TNT equivalency value about the explosion limit concentration of LNG on the 2D-AUTODYN simulation, we could get the explosion pressure wave profiles (explosion pressure, explosion velocity, etc.). In the last step, we performed LNG explosion simulation by applying to the explosion pressure wave profiles as the input data on the 3D-AUTODYN simulation. As a result, we had performed analyzing of the explosion characteristics of LNG in accordance with concentration through the 3D-AUTODYN simulation in terms of the explosion pressure behavior and structure's destruction and damage behavior.

방전전극 재질과 최소점화에너지에 관한 실험 연구 (An Experimental Study on the Minimum Ignition Energy in Low Voltage Spark Discharge by Electrode Material)

  • 최상원
    • 한국안전학회지
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    • 제27권3호
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    • pp.63-70
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    • 2012
  • In the hazardous areas where explosive gases, vapor or mists exist, electrical apparatus and installations must be the explosion-proof construction to prevent or limit the danger of the ignition of potentially explosive atmosphere. In Korea, nine types of protection have been specified in the government regulations at present: flameproof enclosure, pressurization, oil immersion, increased safety, intrinsic safety, non-incendive, powder filling, encapsulation, and special types. Among these types, the intrinsic safety has the construction which limit or by-pass igniting the electric energy using electronic devices. This type has lots of merits but at the same time requires a high-degree of technology. In this paper, we investigated several dominating factors which affect the minimum ignition energy; this energy plays a very important role in design and evaluation of the intrinsic safety type electrical apparatus. Electrode material, which is one of the most important factors, was intensively studied for the five sorts of material(Al, Cd, Mg, Sn, and Zn) with performing experiment in a low-voltage inductive circuit using IEC-type(International Electro-technical Commission) spark apparatus. The experimental results show that the minimum ignition energy of electrode material is varied: highest in Cd and lowest in Sn. We also confirmed the effect of electrode make-and-break speed.

마이크로 센서 어레이 제작 및 폭발성 가스 인식으로의 응용 (Micro Sensor Away and its Application to Recognizing Explosive Gases)

  • 이대식;이덕동
    • 대한전자공학회논문지SD
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    • 제40권1호
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    • pp.11-19
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    • 2003
  • 폭발성 가스의 증류 및 그 양을 검지하기 위한 4 개의 개별 센서가 한 마이크로 열판 위에 집적된 센서어레이를 개발했다. 이 센서어레이는 각종 가스에 대해 다양한 감도 패턴을 가지며, SnO2를 모물질로 하는 4 개의 산화물 반도체 마이크로 가스센서로 구성하였다. 다공질에 큰 비표면적을 가진 모물질에 서로 다른 촉매를 첨가하여 감지물질을 제작함으로써 저농도에 대한 감도 및 재현성을 높였고, 센서어레이 전반에서 균일한 온도 분포가 되도록 설계하였다. 마이크로 열판은 N/O/N 박막을 가진 실리콘 기관을 이용하여, 열적 고립을 위해 Al 본딩 와이어로 공기중에 부유되어 있고, CMP 공정으로 두께를 제어하여 소모 전력을 조절하였다. 400℃에서 동작하는 센서어레이로부터 얻은 감도를 이용하여 주성분 분석 기법을 통해 폭발 하한값의 범위에서 부탄, 프로판, LPG, 그리고 일산화탄소 등과 같은 폭발성 빛 유독성 가스의 증류 및 양을 신뢰성 있게 식별할 수 있었다.